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      Anterior Chamber Angle Assessment Techniques: A Review

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          Abstract

          Assessment of the anterior chamber angle (ACA) is an essential part of the ophthalmological examination. It is intrinsically related to the diagnosis and treatment of glaucoma and has a role in its prevention. Although slit-lamp gonioscopy is considered the gold-standard technique for ACA evaluation, its poor reproducibility and the long learning curve are well-known shortcomings. Several new imaging techniques for angle evaluation have been developed in the recent years. However, whether these instruments may replace or not gonioscopy in everyday clinical practice remains unclear. This review summarizes the last findings in ACA evaluation, focusing on new instruments and their application to the clinical practice. Special attention will be given to the comparison between these new techniques and traditional slit-lamp gonioscopy. Whereas ultrasound biomicroscopy and anterior segment optical coherence tomography provide quantitative measurements of the anterior segment’s structures, new gonio-photographic systems allow for a qualitative assessment of angle findings, similarly to gonioscopy. Recently developed deep learning algorithms provide an automated classification of angle images, aiding physicians in taking faster and more efficient decisions. Despite new imaging techniques made analysis of the ACA more objective and practical, the ideal method for ACA evaluation has still to be determined.

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          Most cited references135

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          Global prevalence of glaucoma and projections of glaucoma burden through 2040: a systematic review and meta-analysis.

          Glaucoma is the leading cause of global irreversible blindness. Present estimates of global glaucoma prevalence are not up-to-date and focused mainly on European ancestry populations. We systematically examined the global prevalence of primary open-angle glaucoma (POAG) and primary angle-closure glaucoma (PACG), and projected the number of affected people in 2020 and 2040. Systematic review and meta-analysis. Data from 50 population-based studies (3770 POAG cases among 140,496 examined individuals and 786 PACG cases among 112 398 examined individuals). We searched PubMed, Medline, and Web of Science for population-based studies of glaucoma prevalence published up to March 25, 2013. Hierarchical Bayesian approach was used to estimate the pooled glaucoma prevalence of the population aged 40-80 years along with 95% credible intervals (CrIs). Projections of glaucoma were estimated based on the United Nations World Population Prospects. Bayesian meta-regression models were performed to assess the association between the prevalence of POAG and the relevant factors. Prevalence and projection numbers of glaucoma cases. The global prevalence of glaucoma for population aged 40-80 years is 3.54% (95% CrI, 2.09-5.82). The prevalence of POAG is highest in Africa (4.20%; 95% CrI, 2.08-7.35), and the prevalence of PACG is highest in Asia (1.09%; 95% CrI, 0.43-2.32). In 2013, the number of people (aged 40-80 years) with glaucoma worldwide was estimated to be 64.3 million, increasing to 76.0 million in 2020 and 111.8 million in 2040. In the Bayesian meta-regression model, men were more likely to have POAG than women (odds ratio [OR], 1.36; 95% CrI, 1.23-1.52), and after adjusting for age, gender, habitation type, response rate, and year of study, people of African ancestry were more likely to have POAG than people of European ancestry (OR, 2.80; 95% CrI, 1.83-4.06), and people living in urban areas were more likely to have POAG than those in rural areas (OR, 1.58; 95% CrI, 1.19-2.04). The number of people with glaucoma worldwide will increase to 111.8 million in 2040, disproportionally affecting people residing in Asia and Africa. These estimates are important in guiding the designs of glaucoma screening, treatment, and related public health strategies. Copyright © 2014 American Academy of Ophthalmology. Published by Elsevier Inc. All rights reserved.
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            The definition and classification of glaucoma in prevalence surveys.

            This review describes a scheme for diagnosis of glaucoma in population based prevalence surveys. Cases are diagnosed on the grounds of both structural and functional evidence of glaucomatous optic neuropathy. The scheme also makes provision for diagnosing glaucoma in eyes with severe visual loss where formal field testing is impractical, and for blind eyes in which the optic disc cannot be seen because of media opacities.
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              Virtual Ophthalmology: Telemedicine in a Covid-19 Era

              Purpose To discuss the effects of the SARS-Cov-2 betacoronavirus on ambulatory ophthalmology practices, the value proposition of telemedicine, tele-ophthalmology implementation methodologies, and the accelerated future of telemedicine. Design Review of the current telehealth landscape including usage, policies, and techniques for ambulatory practice integration. Methods We provide author-initiated review of recent trends in telehealth, governmental recommendations for healthcare delivery during the COVID-19 pandemic, and a PubMed Central query for telemedicine in ophthalmology or tele-ophthalmology. In addition, authors’ comprehensive experience in telemedicine design and implementation is provided. Results A summary describing the present state of telehealth, tele-ophthalmology modeling, care delivery, and the proposed impact of telehealth surges on the future of ophthalmology practice. Conclusion Recent patient and provider interest in telemedicine, the relaxation of regulatory restrictions, increased remote care reimbursement, and ongoing social distancing practices compels many ophthalmologists to consider virtualizing services.
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                Author and article information

                Journal
                J Clin Med
                J Clin Med
                jcm
                Journal of Clinical Medicine
                MDPI
                2077-0383
                25 November 2020
                December 2020
                : 9
                : 12
                : 3814
                Affiliations
                [1 ]IRCCS-Fondazione Bietti, 00198 Rome, Italy; ivano.riva@ 123456virgilio.it (I.R.); oddonef@ 123456gmail.com (F.O.)
                [2 ]Department of Surgical and Clinical, Diagnostic and Pediatric Sciences, Section of Ophthalmology, University of Pavia, IRCCS Fondazione Policlinico San Matteo, 27100 Pavia, Italy; eleonora.micheletti@ 123456gmail.com (E.M.); carlo.bruttini@ 123456hotmail.it (C.B.); silvia.montescani@ 123456gmail.com (S.M.)
                [3 ]Department of Surgical and Clinical, Diagnostic and Pediatric Sciences, Section of Ophthalmology, University of Pavia, 27100 Pavia, Italy; gianni.deangelis@ 123456iol.it
                [4 ]Department of Engineering “Enzo Ferrari”, University of Modena and Reggio Emilia, 41125 Modena, Italy; luigi.rovati@ 123456unimore.it
                [5 ]Hamilton Glaucoma Center, Shiley Eye Center and Department of Ophthalmology, University of California, La Jolla, San Diego, CA 92093, USA; rweinreb@ 123456health.ucsd.edu
                Author notes
                Author information
                https://orcid.org/0000-0002-7397-2260
                https://orcid.org/0000-0002-1743-3043
                https://orcid.org/0000-0001-9553-3202
                Article
                jcm-09-03814
                10.3390/jcm9123814
                7759936
                33255754
                72f22e73-64b8-424f-b390-4cb27d26dc8e
                © 2020 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 06 October 2020
                : 24 November 2020
                Categories
                Review

                diagnosis,trabecular meshwork,anterior chamber angle,iridocorneal angle,angle closure glaucoma

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